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具有优异电致化学发光性能的高稳定介孔发光功能化 MOF 用于构建超灵敏免疫传感器。

Highly Stable Mesoporous Luminescence-Functionalized MOF with Excellent Electrochemiluminescence Property for Ultrasensitive Immunosensor Construction.

机构信息

College of Chemistry and Chemical Engineering , Southwest University , Chongqing 400715 , PR China.

出版信息

ACS Appl Mater Interfaces. 2018 May 9;10(18):15913-15919. doi: 10.1021/acsami.8b05038. Epub 2018 Apr 30.

Abstract

In this work, a novel mesoporous luminescence-functionalized metal-organic framework (Ru-PCN-777) with high stability and excellent electrochemiluminescence (ECL) performance was synthesized by immobilizing Ru(bpy)(mcpbpy) on the Zr cluster of PCN-777 via a strong coordination bond between Zr and -COO. Consequently, the Ru(bpy)(mcpbpy) could not only cover the surface of PCN-777 but also graft into the interior of PCN-777, which greatly increased the loading amount of Ru(bpy)(mcpbpy) and effectively prevented the leaching of the Ru(bpy)(mcpbpy) resulting in a stable and high ECL response. Considering the above merits, we utilized the mesoporous Ru-PCN-777 to construct an ECL immunosensor to detect mucin 1 (MUC1) based on proximity-induced intramolecular DNA strand displacement (PiDSD). The ECL signal was further enhanced by the enzyme-assisted DNA recycling amplification strategy. As expected, the immunosensor had excellent sensitivity, specificity, and responded wide linearly to the concentration of MUC1 from 100 fg/mL to 100 ng/mL with a low detection limit of 33.3 fg/mL (S/N = 3). It is the first time that mesoporous Zr-MOF was introduced into ECL system to assay biomolecules, which might expand the application of mesoporous metal-organic frameworks (MOFs) in bioanalysis. This work indicates that the use of highly stable mesoporous luminescence-functionalized MOFs to enhance the ECL intensity and stability is a feasible strategy for designing and constructing high-performance ECL materials, and therefore may shed light on new ways to develop highly sensitive and selective ECL sensors.

摘要

在这项工作中,通过Zr 簇与-COO 之间的强配位键,将 Ru(bpy)(mcpbpy)固定在 PCN-777 的 Zr 簇上,合成了一种具有高稳定性和优异电致化学发光(ECL)性能的新型介孔发光功能化金属有机骨架(Ru-PCN-777)。因此,Ru(bpy)(mcpbpy)不仅可以覆盖 PCN-777 的表面,还可以接枝到 PCN-777 的内部,这极大地增加了 Ru(bpy)(mcpbpy)的负载量,并有效地防止了 Ru(bpy)(mcpbpy)的浸出,从而产生了稳定且高的 ECL 响应。考虑到上述优点,我们利用介孔 Ru-PCN-777 构建了一种基于近邻诱导分子内 DNA 链置换(PiDSD)的 ECL 免疫传感器来检测黏蛋白 1(MUC1)。酶辅助 DNA 循环放大策略进一步增强了 ECL 信号。不出所料,该免疫传感器具有出色的灵敏度、特异性和响应线性范围,可从 100 fg/mL 至 100 ng/mL 宽浓度范围内检测 MUC1,检测限低至 33.3 fg/mL(S/N = 3)。这是首次将介孔 Zr-MOF 引入 ECL 系统来测定生物分子,这可能会扩展介孔金属有机骨架(MOFs)在生物分析中的应用。这项工作表明,使用高度稳定的介孔发光功能化 MOFs 来增强 ECL 强度和稳定性是设计和构建高性能 ECL 材料的一种可行策略,因此可能为开发高灵敏度和选择性的 ECL 传感器开辟新途径。

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